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H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3

Epigenetic regulatory mechanisms and their enzymes are promising targets for malaria therapeutic intervention; however, the epigenetic component of gene expression in P. falciparum is poorly understood. Dynamic or stable association of epigenetic marks with genomic features provides important clues...

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Detalles Bibliográficos
Autores principales: Bártfai, Richárd, Hoeijmakers, Wieteke A. M., Salcedo-Amaya, Adriana M., Smits, Arne H., Janssen-Megens, Eva, Kaan, Anita, Treeck, Moritz, Gilberger, Tim-Wolf, Françoijs, Kees-Jan, Stunnenberg, Hendrik G.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3002978/
https://www.ncbi.nlm.nih.gov/pubmed/21187892
http://dx.doi.org/10.1371/journal.ppat.1001223
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author Bártfai, Richárd
Hoeijmakers, Wieteke A. M.
Salcedo-Amaya, Adriana M.
Smits, Arne H.
Janssen-Megens, Eva
Kaan, Anita
Treeck, Moritz
Gilberger, Tim-Wolf
Françoijs, Kees-Jan
Stunnenberg, Hendrik G.
author_facet Bártfai, Richárd
Hoeijmakers, Wieteke A. M.
Salcedo-Amaya, Adriana M.
Smits, Arne H.
Janssen-Megens, Eva
Kaan, Anita
Treeck, Moritz
Gilberger, Tim-Wolf
Françoijs, Kees-Jan
Stunnenberg, Hendrik G.
author_sort Bártfai, Richárd
collection PubMed
description Epigenetic regulatory mechanisms and their enzymes are promising targets for malaria therapeutic intervention; however, the epigenetic component of gene expression in P. falciparum is poorly understood. Dynamic or stable association of epigenetic marks with genomic features provides important clues about their function and helps to understand how histone variants/modifications are used for indexing the Plasmodium epigenome. We describe a novel, linear amplification method for next-generation sequencing (NGS) that allows unbiased analysis of the extremely AT-rich Plasmodium genome. We used this method for high resolution, genome-wide analysis of a histone H2A variant, H2A.Z and two histone H3 marks throughout parasite intraerythrocytic development. Unlike in other organisms, H2A.Z is a constant, ubiquitous feature of euchromatic intergenic regions throughout the intraerythrocytic cycle. The almost perfect colocalisation of H2A.Z with H3K9ac and H3K4me3 suggests that these marks are preferentially deposited on H2A.Z-containing nucleosomes. By performing RNA-seq on 8 time-points, we show that acetylation of H3K9 at promoter regions correlates very well with the transcriptional status whereas H3K4me3 appears to have stage-specific regulation, being low at early stages, peaking at trophozoite stage, but does not closely follow changes in gene expression. Our improved NGS library preparation procedure provides a foundation to exploit the malaria epigenome in detail. Furthermore, our findings place H2A.Z at the cradle of P. falciparum epigenetic regulation by stably defining intergenic regions and providing a platform for dynamic assembly of epigenetic and other transcription related complexes.
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spelling pubmed-30029782010-12-27 H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3 Bártfai, Richárd Hoeijmakers, Wieteke A. M. Salcedo-Amaya, Adriana M. Smits, Arne H. Janssen-Megens, Eva Kaan, Anita Treeck, Moritz Gilberger, Tim-Wolf Françoijs, Kees-Jan Stunnenberg, Hendrik G. PLoS Pathog Research Article Epigenetic regulatory mechanisms and their enzymes are promising targets for malaria therapeutic intervention; however, the epigenetic component of gene expression in P. falciparum is poorly understood. Dynamic or stable association of epigenetic marks with genomic features provides important clues about their function and helps to understand how histone variants/modifications are used for indexing the Plasmodium epigenome. We describe a novel, linear amplification method for next-generation sequencing (NGS) that allows unbiased analysis of the extremely AT-rich Plasmodium genome. We used this method for high resolution, genome-wide analysis of a histone H2A variant, H2A.Z and two histone H3 marks throughout parasite intraerythrocytic development. Unlike in other organisms, H2A.Z is a constant, ubiquitous feature of euchromatic intergenic regions throughout the intraerythrocytic cycle. The almost perfect colocalisation of H2A.Z with H3K9ac and H3K4me3 suggests that these marks are preferentially deposited on H2A.Z-containing nucleosomes. By performing RNA-seq on 8 time-points, we show that acetylation of H3K9 at promoter regions correlates very well with the transcriptional status whereas H3K4me3 appears to have stage-specific regulation, being low at early stages, peaking at trophozoite stage, but does not closely follow changes in gene expression. Our improved NGS library preparation procedure provides a foundation to exploit the malaria epigenome in detail. Furthermore, our findings place H2A.Z at the cradle of P. falciparum epigenetic regulation by stably defining intergenic regions and providing a platform for dynamic assembly of epigenetic and other transcription related complexes. Public Library of Science 2010-12-16 /pmc/articles/PMC3002978/ /pubmed/21187892 http://dx.doi.org/10.1371/journal.ppat.1001223 Text en Bartfai et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bártfai, Richárd
Hoeijmakers, Wieteke A. M.
Salcedo-Amaya, Adriana M.
Smits, Arne H.
Janssen-Megens, Eva
Kaan, Anita
Treeck, Moritz
Gilberger, Tim-Wolf
Françoijs, Kees-Jan
Stunnenberg, Hendrik G.
H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title_full H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title_fullStr H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title_full_unstemmed H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title_short H2A.Z Demarcates Intergenic Regions of the Plasmodium falciparum Epigenome That Are Dynamically Marked by H3K9ac and H3K4me3
title_sort h2a.z demarcates intergenic regions of the plasmodium falciparum epigenome that are dynamically marked by h3k9ac and h3k4me3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3002978/
https://www.ncbi.nlm.nih.gov/pubmed/21187892
http://dx.doi.org/10.1371/journal.ppat.1001223
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